Prakash Pavitra, Nambiar Aishwarya, Sheeba Vasu
Evolutionary and Integrative Biology Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore, India.
Neuroscience Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore, India.
PLoS One. 2017 May 30;12(5):e0175073. doi: 10.1371/journal.pone.0175073. eCollection 2017.
In Drosophila, neuropeptide Pigment Dispersing Factor (PDF) is expressed in small and large ventral Lateral Neurons (sLNv and lLNv), among which sLNv are critical for activity rhythms in constant darkness. Studies show that this is mediated by rhythmic accumulation and likely secretion of PDF from sLNv dorsal projections, which in turn synchronises molecular oscillations in downstream circadian neurons. Using targeted expression of a neurodegenerative protein Huntingtin in LNv, we evoke a selective loss of neuropeptide PDF and clock protein PERIOD from sLNv soma. However, PDF is not lost from sLNv dorsal projections and lLNv. These flies are behaviourally arrhythmic in constant darkness despite persistence of PDF oscillations in sLNv dorsal projections and synchronous PERIOD oscillations in downstream circadian neurons. We find that PDF oscillations in sLNv dorsal projections are not sufficient for sustenance of activity rhythms in constant darkness and this is suggestive of an additional component that is possibly dependent on sLNv molecular clock and PDF in sLNv soma. Additionally, despite loss of PERIOD in sLNv, their activity rhythms entrain to light/dark cycles indicating that sLNv molecular clocks are not necessary for entrainment. Under constant light, these flies lack PDF from both soma and dorsal projections of sLNv, and when subjected to light/dark cycles, show morning and evening anticipation and accurately phased morning and evening peaks. Thus, under light/dark cycles, PDF in sLNv is not necessary for morning anticipation.
在果蝇中,神经肽色素分散因子(PDF)在大小不同的腹侧外侧神经元(sLNv和lLNv)中表达,其中sLNv对持续黑暗中的活动节律至关重要。研究表明,这是由PDF从sLNv背侧投射的节律性积累以及可能的分泌介导的,进而使下游昼夜节律神经元中的分子振荡同步。通过在LNv中靶向表达神经退行性蛋白亨廷顿,我们引发了sLNv胞体中神经肽PDF和生物钟蛋白周期蛋白(PERIOD)的选择性缺失。然而,PDF在sLNv背侧投射和lLNv中并未丢失。尽管sLNv背侧投射中存在PDF振荡,且下游昼夜节律神经元中存在同步的周期蛋白振荡,但这些果蝇在持续黑暗中行为上没有节律。我们发现,sLNv背侧投射中的PDF振荡不足以维持持续黑暗中的活动节律,这表明可能存在一个额外的成分,它可能依赖于sLNv分子钟和sLNv胞体中的PDF。此外,尽管sLNv中周期蛋白缺失,但其活动节律能与光/暗周期同步,这表明sLNv分子钟对于同步并非必需。在持续光照下,这些果蝇的sLNv胞体和背侧投射中都缺乏PDF,当处于光/暗周期时,它们表现出早晚预期以及精确相位的早晚峰值。因此,在光/暗周期下,sLNv中的PDF对于早晨预期并非必需。